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串联离子淌度谱法检测万亿分之一浓度的货物中爆炸物痕迹。

Tandem Ion Mobility Spectrometry for the Detection of Traces of Explosives in Cargo at Concentrations of Parts Per Quadrillion.

机构信息

SEADM , Parque Tecnológico de Boecillo 205 , Valladolid , Spain.

出版信息

Anal Chem. 2019 Nov 5;91(21):14009-14018. doi: 10.1021/acs.analchem.9b03589. Epub 2019 Oct 9.

Abstract

A tandem ion mobility spectrometer (IMS) built from two differential mobility analyzers (DMAs) is coupled at ambient pressure with a thermal fragmenter placed in between, such that the precursor ions selected in the first DMA are thermally decomposed at ambient pressure in the fragmenter and the product ions generated are filtered in the second DMA. A thermal desorber and a multicapillary gas chromatography (GC) column are coupled to a secondary electrospray (SESI) ion source, so the adsorption sampling filters are thermally desorbed and the liberated vapors are separated in the GC column, prior to their ionization and mobility/mobility classification. The new fragmenter allows the fragmentation of the five explosives studied: RDX, PETN, NG, EGDN, and TNT. The background of the analyzer is evaluated for the five explosives using air samples of 500 L volume. An atmospheric background of only 2.5 pg (5 ppq) is found for TNT, being somewhat higher for the rest of explosives studied. The architecture GC-IMS is compared with GC-IMS obtaining a 100-fold increase of sensitivity in the first configuration, confirming the high selectivity provided by the fragmentation cell and the second IMS stage for the product ion mobility analysis. The analyzer is tested also with real explosives hidden in cargo pallets achieving successful detection of four (EGDN, NG, TNT, and PETN) out of five explosives.

摘要

串联离子淌度谱仪(IMS)由两个差分迁移率分析仪(DMA)构建而成,在常压下与位于两者之间的热裂解器相耦合,使得在第一个 DMA 中选择的前体离子在常压下在裂解器中进行热分解,并且生成的产物离子在第二个 DMA 中进行过滤。热解吸器和多毛细管气相色谱(GC)柱与二次电喷雾(SESI)离子源相耦合,从而吸附采样过滤器被热解吸,并且在 GC 柱中分离释放的蒸气,然后对其进行离子化和迁移/迁移分类。新的裂解器允许对研究的五种爆炸物进行碎裂:RDX、PETN、NG、EGDN 和 TNT。使用 500L 体积的空气样品对五种爆炸物的分析仪背景进行了评估。对于 TNT,仅发现 2.5pg(5ppq)的大气背景,对于其余研究的爆炸物,背景略高。将 GC-IMS 架构与 GC-IMS 进行比较,在第一种配置中灵敏度提高了 100 倍,这证实了碎裂池和产物离子迁移率分析的第二个 IMS 级别的高选择性。该分析仪还用于对隐藏在货物托盘中的实际爆炸物进行测试,成功检测到五种爆炸物中的四种(EGDN、NG、TNT 和 PETN)。

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